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An efficient inter-domain handover scheme with minimized latency for PMIPv6

机译:针对PMIPv6的高效域间切换方案,延迟最小

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摘要

Although PMIPv6 was designed to provide network-based mobility, it has a limitation in that MNs (Mobile Nodes) can perform handover only within a local domain. This paper proposes a novel inter-PMIPv6-domain handover scheme that extends the handover capability of PMIPv6 to the inter-domain level. The proposed scheme minimizes the inter-domain handover latency by introducing the overlapping MAG (OMAG) and the boundary MAG (BMAG) in the cell planning stage. It further reduces the handover latency by utilizing a fast IPv6 address generation and verification method called the Pseudocode Generation & Verification Algorithm (PGVA). Finally, since it is an extension of PMIPv6, it retains the benefits of this method, such as the freeing up of the MN during any mobility activities and the removal of the tunneling overheads in the access network. In this approach, two inter-domain handover protocols called No-Gap and Reactive are proposed. To evaluate their performances, comparisons are made with MIPv6, FMIPv6, I. PMIPv6 and EIPMH using mathematical models. The performance results show that the proposed scheme outperforms those existing inter-domain handover methods in terms of the handover latency.
机译:尽管PMIPv6旨在提供基于网络的移动性,但它的局限性在于MN(移动节点)只能在本地域内执行切换。本文提出了一种新颖的PMIPv6域间切换方案,该方案将PMIPv6的切换能力扩展到域间级别。所提出的方案通过在小区规划阶段引入重叠MAG(OMAG)和边界MAG(BMAG)来最小化域间切换延迟。它利用称为伪码生成和验证算法(PGVA)的快速IPv6地址生成和验证方法,进一步减少了切换等待时间。最后,由于它是PMIPv6的扩展,因此保留了此方法的优点,例如在任何移动性活动期间释放MN,并消除了接入网络中的隧道开销。在这种方法中,提出了两个称为No-Gap和Reactive的域间切换协议。为了评估其性能,使用数学模型与MIPv6,FMIPv6,I。PMIPv6和EIPMH进行了比较。性能结果表明,该方案在切换等待时间方面优于现有的域间切换方法。

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